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March 22, 20260 citationsOpen Access

Energy Architecture of the Earth: From Giant Impact to a Network-Based Mantle System

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KGKujtim gjoka Gjoka

Key Points

  • The aim is to present a unified model integrating various Earth processes such as formation, mantle dynamics, and surface interactions.
  • Developed a conceptual framework that integrates planetary formation and angular momentum redistribution.
  • Analyzed deep mantle structures like Large Low Shear Velocity Provinces (LLSVPs) as energy nodes.
  • Employed observationally constrained methods including seismic tomography and hotspot distribution.
  • Proposed that Earth's internal processes function as a distributed network rather than independent systems.
  • Identified the role of Earth's axial tilt in generating long-term energy gradients at the surface.
  • Highlighted the dynamic connections between mantle plumes, subduction zones, and energy transfer pathways.

Abstract

This work presents a conceptual framework for understanding the organization of energy within the Earth system. It integrates planetary formation, angular momentum redistribution, mantle structure, and surface processes into a unified model. Rather than treating these processes independently, this study proposes that Earth’s internal dynamics can be interpreted as a distributed network of energy and mass transfer. In this framework, deep mantle structures such as Large Low Shear Velocity Provinces (LLSVPs) act as persistent nodes, while mantle plumes, subduction zones, and flow pathways form dynamic connections within the system. The model emphasizes observationally constrained elements, including seismic tomography, hotspot distribution, and plate tectonics, while minimizing reliance on speculative intermediate assumptions. Additionally, the work examines the role of Earth's axial tilt as a source of long-term surface energy gradients and discusses the indirect coupling between surface processes and mantle dynamics. The proposed framework does not attempt to replace existing geophysical models but offers a structural reinterpretation that highlights the network-like organization of Earth's internal processes. This study is presented as a conceptual and testable hypothesis, with implications for future research in mantle dynamics, geophysical modeling, and Earth system science.

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Cite This Study

Kujtim gjoka Gjoka (2026) studied this question.

synapsesocial.com/papers/69bf8978f665edcd009e9235https://doi.org/10.5281/zenodo.19130937
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